• DocumentCode
    1520911
  • Title

    Turbo greedy multiuser detection

  • Author

    AlRustamani, Amina A. ; Damnjanovic, Aleksandar D. ; Vojcic, Branimir R.

  • Author_Institution
    Dubai Internet City, United Arab Emirates
  • Volume
    19
  • Issue
    8
  • fYear
    2001
  • fDate
    8/1/2001 12:00:00 AM
  • Firstpage
    1638
  • Lastpage
    1645
  • Abstract
    Previously, a novel scheme for iterative multiuser detection and turbo decoding was proposed by Damnjanovic and Vojcic (2000, 2001). In this scheme, multiuser detection and single-user turbo decoding are tightly coupled to maximize the overall gain. The extrinsic probabilities for the coded bits of the interfering users, obtained after each turbo decoding iteration, are used as a priori probabilities in the following multiuser iteration and the extrinsic information for the systematic bits of the desired user is used as a priori information in the next single-user turbo decoding iteration. Turbo decoding of parallel concatenated convolutional codes is carried out in parallel fashion. It has been shown that the proposed detector approaches the multiuser capacity limit within 1 dB in the low signal-to-noise ratio region. However, the main drawback of the scheme is its exponential complexity in the number of users, which is due to the complexity of the maximum a posteriori probability (MAP) multiuser detector. In this paper, we show that the complexity of the scheme can be significantly reduced by replacing the (MAP) multiuser detector with an iterative detector derived from the greedy multiuser detector proposed by AlRustamani and Vojcic (2000). In this paper, we demonstrate that, for both the additive white Gaussian noise and the frequency-nonselective Rayleigh fading, the substantial reduction in complexity of the iterative scheme proposed by Damnjanovic and Vojcic when the greedy detector is utilized introduces a slight degradation in performance
  • Keywords
    AWGN channels; channel coding; concatenated codes; convolutional codes; fading channels; iterative decoding; multi-access systems; multiuser channels; receivers; signal detection; turbo codes; additive white Gaussian noise; complexity; degradation; exponential complexity; frequency-nonselective Rayleigh fading; interfering users; iterative detector; iterative multiuser detection; iterative scheme; low signal-to-noise ratio region; multiuser capacity limit; multiuser detection; multiuser iteration; parallel concatenated convolutional codes; performance; single-user turbo decoding; turbo decoding; turbo decoding iteration; turbo greedy multiuser detection; Additive white noise; Concatenated codes; Convolutional codes; Degradation; Detectors; Frequency; Iterative decoding; Multiuser detection; Rayleigh channels; Signal to noise ratio;
  • fLanguage
    English
  • Journal_Title
    Selected Areas in Communications, IEEE Journal on
  • Publisher
    ieee
  • ISSN
    0733-8716
  • Type

    jour

  • DOI
    10.1109/49.942524
  • Filename
    942524